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Mutations in the extracellular domain cause RET loss of function by a dominant negative mechanism
M P Cosma1, M Cardone, F Carlomagno
1Dipartimento di Biochimica e Biotecnologie Mediche and Centro di Ingegneria Genetica, CEINGE, Naples, Italy.
Abstract:
The RET proto-oncogene encodes a tyrosine kinase receptor expressed in neuroectoderm-derived cells. Mutations in specific regions of the gene are responsible for the tumor syndromes multiple endocrine neoplasia types 2A and 2B (MEN 2A and 2B), while mutations along the entire gene are involved in a developmental disorder of the gastrointestinal tract, Hirschsprung's disease (HSCR disease). Two mutants in the extracellular domain of RET, one associated with HSCR disease and one carrying a flag epitope, were analyzed to investigate the impact of the mutations on RET function. Both mutants were impeded in their maturation, resulting in the lack of the 170-kDa mature form and the accumulation of the 150-kDa immature form in the endoplasmic reticulum. Although not exposed on the cell surface, the 150-kDa species formed dimers and aggregates; this was more pronounced in a double mutant bearing a MEN 2A mutation. Tyrosine phosphorylation and the transactivation potential were drastically reduced in single and double mutants. Finally, in cotransfection experiments both mutants exerted a dominant negative effect over protoRET and RET2A through the formation of a heteromeric complex that prevents their maturation and function. These results suggest that HSCR mutations in the extracellular region cause RET loss of function through a dominant negative mechanism.
Insights
Mutations in the RET gene extracellular domain can cause Hirschsprung's disease (HSCR disease). These RET mutations lead to loss of function via a dominant negative mechanism, impacting receptor maturation and signaling.
Area of Science:
- Genetics
- Molecular Biology
- Developmental Biology
Background:
- The RET proto-oncogene encodes a tyrosine kinase receptor crucial for neuroectoderm development.
- RET gene mutations are linked to multiple endocrine neoplasia (MEN 2A/2B) and Hirschsprung's disease (HSCR disease).
Purpose of the Study:
- To investigate the functional impact of extracellular RET domain mutations associated with HSCR disease.
- To elucidate the molecular mechanisms underlying RET dysfunction in HSCR disease.
Main Methods:
- Analysis of two RET extracellular domain mutants (HSCR-associated and flag-tagged).
- Assessment of protein maturation, aggregation, tyrosine phosphorylation, and transactivation potential.
- Cotransfection experiments to evaluate dominant-negative effects.
Main Results:
- Both HSCR and flag-tagged RET mutants showed impaired maturation, accumulating an immature 150-kDa form in the endoplasmic reticulum.
- Mutants exhibited reduced tyrosine phosphorylation and transactivation potential.
- Mutants displayed a dominant-negative effect on wild-type RET and RET2A by preventing maturation and function.
Conclusions:
- Extracellular RET mutations causing HSCR disease lead to a loss of function.
- This loss of function occurs through a dominant-negative mechanism involving impaired protein maturation and complex formation.